English

Quantum phase transitions of polar molecules in bilayer systems

Other Condensed Matter 2007-05-23 v3

Abstract

We investigate the quantum phase transitions of bosonic polar molecules in a two-dimensional double layer system. We show that an interlayer bound state of dipoles (dimers) can be formed when the dipole strength is above a critical value, leading to a zero-energy resonance in the interlayer s-wave scattering channel. In the positive detuning side of the resonance, the strong repulsive interlayer pseudopotential can drive the system into a maximally entangled state, where the wave function is a superposition of two states that have all molecules in one layer and none in the other. We discuss how the zero-energy resonance, dimer states, and the maximally entangled state can be measured in time-of-flight experiments.

Cite

@article{arxiv.cond-mat/0611394,
  title  = {Quantum phase transitions of polar molecules in bilayer systems},
  author = {Daw-Wei Wang},
  journal= {arXiv preprint arXiv:cond-mat/0611394},
  year   = {2007}
}

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